Barbara Pereira Silva | Electric power system | Best Researcher Award

Best Researcher Award

Barbara Pereira Silva — Federal University of Minas Gerais, Brazil

Barbara Pereira Silva
Affiliation Federal University of Minas Gerais
Country Brazil
Scopus ID 57204734689
Documents 9
Citations 36
h-index 4
Subject Area Electric power system
Event Scientific World Research Awards
ORCID 0000-0003-0827-8878

Barbara Pereira Silva is an electrical engineering researcher. Her documented academic activities include research and postdoctoral work associated with the Lightning Research Center. Her publication record addresses electrical parameters of soil, lightning effects and electromagnetic modelling.

Abstract

Barbara Pereira Silva’s documented research profile is centered on electrical engineering and electric power systems. Her works examine lightning-related phenomena, soil electrical parameters, transmission-line behaviour, tower-footing impedance, and time-domain electromagnetic modelling.[1]

Keywords

Electric power systems; electrical engineering; lightning protection; transmission lines; soil parameters; tower-footing impedance; electromagnetic modelling; HEM-TD; lightning performance.

Introduction

Silva’s academic trajectory includes undergraduate and master’s education in electrical engineering and a doctorate in electrical engineering at Brazilian federal universities. Her ORCID record also identifies research and postdoctoral activity at the Federal University of Minas Gerais. The documented works focus on lightning and power-system engineering. [1]

Research Profile

The research profile includes frequency-dependent electrical parameters of soil and their measurement, lightning response of transmission lines, and representation of electromagnetic effects through the HEM-TD model. Publications also address positive and negative lightning flashes.[2]

Research Contributions

Her documented contributions include studies of soil parameters across lightning-current frequency components, using short cylindrical electrodes, and improved representation of frequency dependence within HEM-TD modelling. Related studies investigate tower-footing impedance, transmission-line lightning performance.[4]

Publications

Barbara Pereira Silva’s publication record focuses on electric power systems, lightning protection, transmission-line performance, and the electrical characterization of soil. Her research includes journal articles and international conference papers addressing frequency-dependent soil parameters.[3]

Research Impact

The supplied researcher metrics identify 9 documents, 36 citations, and an h-index of 4 for the specified Scopus author record. The publication portfolio spans Electric Power Systems Research, IEEE Transactions on Electromagnetic Compatibility, and international lightning-protection conferences.[5]

Award Suitability

The Best Researcher Award profile is supported by a focused publication record in electrical engineering and electric power systems. The documented combination of journal research, conference contributions, and continuing academic activity provides a basis for considering the researcher within an academic recognition framework. [1]

Conclusion

Barbara Pereira Silva’s documented scholarly profile reflects sustained work in lightning-related electrical engineering and electric power-system research. Her publications address technically specific problems involving soil parameters, transmission lines, grounding, and electromagnetic modelling.

References

  1. ORCID. (n.d.). Bárbara Pereira Silva, ORCID record 0000-0003-0827-8878.
    https://orcid.org/0000-0003-0827-8878
  2. Elsevier. (n.d.). Scopus Author Profile: Bárbara Pereira Silva, Author ID 57204734689. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57204734689
  3. Silva, B. P., Visacro, S., & Silveira, F. H. (2022). HEM-TD: New Time-Domain Electromagnetic Model for Calculating the Lightning Response of Electric Systems and Their Components. IEEE Transactions on Power Delivery.
    https://doi.org/10.1109/TPWRD.2022.3161082
  4. Silva, B. P., Visacro, S., & Silveira, F. H. (2023). New Approaches to Represent the Frequency Dependence of Soil Parameters on the Time-Domain Hybrid Electromagnetic Model (HEM-TD). IEEE Transactions on Electromagnetic Compatibility.
    https://doi.org/10.1109/TEMC.2023.3316094
  5. Silva, B. P., Visacro, S., Silveira, F. H., & Macedo, S. (2023). Assessing the impact of the Corona effect on the lightning response of transmission lines using the Time Domain Hybrid Electromagnetic Model (HEM-TD). Electric Power Systems Research.
    https://doi.org/10.1016/j.epsr.2022.109068

 

Balan George | Electrical and Electronics Engineering | Young Researcher Award

Mr. Balan George | Electrical and Electronics Engineering | Young Researcher Award

Technical University of “Gheorghe Asachi” Iasi, Romania.

George Balan is an energetic and goal‑oriented emerging researcher and engineer from Romania. Presently pursuing a PhD in Electrical Engineering at Gheorghe Asachi Technical University of Iași, he holds a Master’s in Building Services and a Bachelor’s in Power Electronics and Electric Actuators. With hands‑on experience in system test engineering at Continental Iasi and involvement in international internships—including at Osram Continental and the University of Wisconsin Madison—George effectively bridges academic insight with industrial application. He is adept in Python, CAPL, HIL simulation, and automation testing (CANoe, CANdelaStudio), and actively gives back through leadership and volunteer roles in student engineering leagues and civic organizations. His passion for electrical systems and quality-driven innovation shines through his community engagement and his drive toward impactful scholarly contributions. With future aspirations for global collaborations and high-quality publications, George is positioning himself as a promising contributor to power systems and smart energy research

Professional Profile

ORCID Profile 

Education

George’s academic journey is rooted at Gheorghe Asachi Technical University of Iași, where he earned a Bachelor’s in Power Electronics and Electric Actuators, followed by a Master’s in Construction Installations, and is now advancing through doctoral studies in Electrical Engineering. His curriculum blends robust technical foundations—electrical design, energy conversion, automation—with emerging topics like smart infrastructure and system integration. Coursework and projects involved simulation in DIALux Evo and E‑Plan, alongside hands-on use of CAD tools and power system design software. This multidisciplinary training has given him a broad yet detailed understanding of both theoretical and applied branches of electrical engineering, positioning him well to tackle complex research challenges in modern power systems and automation landscapes.

Experience

George serves as a System Test Engineer at Continental Iasi, where he leads automation testing, hardware-in-the-loop (HIL) simulation, and test case development using Python, CAPL, CANoe, and CANdelaStudio. His role emphasizes speeding up validation cycles, debugging automated test frameworks, and ensuring system quality. Prior to this, he gained valuable exposure as an internship tester at Osram Continental Iasi, where he contributed to simulation setups and automation pipelines. He also completed a practicum and participated in a Work & Travel program in the United States, refining intercultural collaboration and engineering skills. His work sits at the interface of software-driven testing and sophisticated electrical systems, demonstrating high adaptability and professional growth within global automotive engineering contexts.

Research Interest

George’s research interests span power electronics, electrical system testing, system-level automation, and smart-grid energy integration. He is especially focused on HIL simulation frameworks, automated validation of electric actuators and power converters, and optimized test methodologies for CAN-based communication systems. His technical skills include Python‑based test scripting, CAPL logic design, and use of DIALux and CAD tools for electrical layout simulations. George is exploring ways to merge digital twins, predictive maintenance, and automated testing to improve reliability and efficiency of power-electronic systems in transport and building services. He is driven by the vision of merging industrial-grade validation standards with innovative academic insights to shape safer, greener smart energy solutions.

Award and Honor

Although specific scholarships or academic honors were not explicitly listed, George’s trajectory reflects recognition through competitive positions: selection as a PhD researcher in a rigorous engineering program, acceptance into innovative internships, and selection for international placements like Work & Travel in the USA. His active volunteer involvement—spanning technology student leagues, the Youth Council of Romania, Save the Children, and Red Cross—also underscores leadership and social commitment. These roles indicate both peer recognition and trust in his mentoring, organizational capabilities, and community impact. As he continues building his scholarly profile toward peer-reviewed contributions and research collaborations, these foundational achievements signal award-worthiness and form a strong basis for future honors

Publication Top Notes

Title: A Perspective on Software‑in‑the‑Loop and Hardware‑in‑the‑Loop Within Digital Twin Frameworks for Automotive Lighting Systems
Authors: George Balan; Philipp Neninger; Enrique Ruiz Zúñiga; Elena Serea; Dorin‑Dumitru Lucache; Alexandru Sălceanu
Year: 2025

Conclusion

George Balan embodies the spirit of a future-focused researcher and engineer, blending academic rigor, real-world industrial experience, and heartfelt community involvement. He is steadily crafting a portfolio of technically grounded contributions in power electronics, test automation, and smart energy infrastructure. His ability to work collaboratively across cultures and domains—from automotive system testing to volunteer leadership—reflects maturity and versatility. With growing activity in digital twin frameworks and simulation-driven validation studies, George is poised to deliver impactful scholarly work. As he continues toward high-impact journal publications and international research collaborations, his potential for scientific leadership and societal advancement is clear. Recognizing George with the Young Researcher Award would honor his broad achievements and encourage his ascent into academic and technical excellence that benefits both the research community and society at large.